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Tangential Contact Stiffness of Rough Cylindrical Faying Surfaces Based on the Fractal Theory

机译:基于分形理论的粗糙圆柱接合面切向接触刚度

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The tangential contact stiffness of cylindrical asperities is investigated using macro- and micro-mechanisms in this study. A microanalysis model is developed and the tangential contact stiffness of elliptically parabolic asperities on the contact surface is determined. The shape influence coefficient of the cylindrical contact is defined, and its rationality is evaluated. The influence of asperity distribution on the rough surface is determined, and the tangential contact stiffness macroanalysis model is constructed based on fractal theory. The mathematical expression to determine the tangential contact stiffness of the macroscopically cylindrical contact is generated, and the effects of influential factors on tangential contact stiffness are explicitly evaluated. Numerical results show that the tangential contact stiffness of asperities is determined by several factors, such as material properties, applied loads, fractal dimension, and surface shape.
机译:在这项研究中,使用宏观和微观机制研究了圆柱凹凸的切向接触刚度。建立了微观分析模型,并确定了接触面上椭圆抛物线形凹凸的切向接触刚度。定义了圆柱触头的形状影响系数,并对其合理性进行了评估。确定了粗糙分布对粗糙表面的影响,并基于分形理论构造了切向接触刚度宏观分析模型。生成确定宏观圆柱接触的切向接触刚度的数学表达式,并明确评估影响因素对切向接触刚度的影响。数值结果表明,粗糙体的切向接触刚度由多种因素决定,例如材料性能,施加的载荷,分形维数和表面形状。

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